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Mutual interaction of red blood cells assessed by optical tweezers and scanning electron microscopy imaging

机译:光学镊子评估的红细胞的相互相互作用和扫描电子显微镜成像

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摘要

The adhesion of red blood cells (RBC) has been studied extensively in frame of cell-to-cell interaction induced by dextran macromolecules, whereas the data are lacking for native plasma solution. We apply optical tweezers to investigate the induced adhesion of RBC in plasma and in dextran solution. Two hypotheses, cross-bridges and depletion layer, are typically used to describe the mechanism of cell interaction; however, both mechanisms need to be confirmed experimentally. These interactions in fact are very much dependent on the size and concentration of dextran and proteins in plasma. The results show that in different dextran solutions, the interaction of adhering RBC agrees well with the quantitative predictions obtained based on the depletion-induced cells adhesion model, whereas the migrating cross-bridges model is more appropriate for plasma. Despite the different mechanisms of RBC interaction in a mixture of dextran with the size ranges and volume fraction proportional to plasma proteins, the dependence of RBC adhering tends to be close to the cross-bridges model. The induced aggregation of RBC in the dextran solutions and in native plasma are observed by direct visualization utilizing scanning electron microscopy. (C) 2018 Optical Society of America
机译:已经在葡聚糖大分子诱导的细胞对细胞相互作用框架中广泛地研究了红细胞(RBC)的粘附性,而数据缺少天然血浆溶液。我们应用光学镊子以研究RBC在血浆和葡聚糖溶液中的诱导粘附。两个假设,交叉桥和耗尽层通常用于描述细胞相互作用的机制;然而,两种机制都需要通过实验确认。这些相互作用实际上非常依赖于血浆中葡聚糖和蛋白质的大小和浓度。结果表明,在不同的葡聚糖溶液中,粘附RBC的相互作用与基于耗尽诱导的细胞粘附模型获得的定量预测相同,而迁移的交叉桥模型更适合等离子体。尽管在葡聚糖的混合物中具有不同的RBC相互作用机制,其尺寸范围和体积分数与血浆蛋白成比例,但RBC粘附的依赖性倾向于接近交叉桥梁模型。利用扫描电子显微镜直接可视化观察到葡聚糖溶液中RBC和天然血浆的诱导聚集。 (c)2018年光学学会

著录项

  • 来源
    《Optics Letters》 |2018年第16期|共4页
  • 作者单位

    Univ Oulu Optoelect &

    Measurement Tech POB 4500 Oulu 90014 Finland;

    Univ Oulu Optoelect &

    Measurement Tech POB 4500 Oulu 90014 Finland;

    Univ Oulu Optoelect &

    Measurement Tech POB 4500 Oulu 90014 Finland;

    Univ Oulu Optoelect &

    Measurement Tech POB 4500 Oulu 90014 Finland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 计量学;光学;
  • 关键词

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